Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6746098 | Fusion Engineering and Design | 2015 | 5 Pages |
Abstract
Hydrogen isotope catalytic exchange between hydrogen and liquid water is a very effective process for deuterium-depleted potable water production and heavy water detritiation. To improve the characteristics of hydrophobic catalysts for this type of reaction, foamed and cellular structures of hydrophobic carbon-supported platinum catalysts were successfully prepared. Separation of deuterium or tritium from liquid water was carried out by liquid-phase catalytic exchange. At a gas-liquid ratio of 1.53 and exchange temperature of 70 °C, the theoretical plate height of the hydrophobic catalyst (HETP = 34.2 cm) was slightly lower than previously reported values. Changing the concentration of the exchange column outlet water yielded nonlinear changes in the height of the packing layer. Configurations of deuterium-depleted potable water and detritiation of heavy water provide references for practical applications.
Related Topics
Physical Sciences and Engineering
Energy
Energy Engineering and Power Technology
Authors
Linsen Ye, Deli Luo, Tao Tang, Wan Yang, Yong Yang,